首页> 外文OA文献 >SUV420H2-Mediated H4K20 Trimethylation Enforces RNA Polymerase II Promoter-Proximal Pausing by Blocking hMOF-Dependent H4K16 Acetylation ▿
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SUV420H2-Mediated H4K20 Trimethylation Enforces RNA Polymerase II Promoter-Proximal Pausing by Blocking hMOF-Dependent H4K16 Acetylation ▿

机译:SUV420H2介导的H4K20三甲基化通过阻断hMOF依赖的H4K16乙酰化作用来增强RNA聚合酶II启动子近端暂停 ▿

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摘要

Many human genes exhibit evidence of initiated RNA polymerase II (Pol II) at their promoters, despite a lack of significant full-length transcript. Such genes exhibit promoter-proximal “pausing,” wherein initiated Pol II accumulates just downstream of the transcription start site due to a rate-limiting step mediating the transition to elongation. The mechanisms that regulate the escape of Pol II from pausing and the relationship to chromatin structure remain incompletely understood. Recently, we showed that CpG island hypermethylation and epigenetic silencing of TMS1/ASC in human breast cancers are accompanied by a local shift from histone H4 lysine 16 acetylation (H4K16Ac) to H4 lysine 20 trimethylation (H4K20me3). Here, we show that hMOF-mediated H4K16Ac and SUV420H2-mediated H4K20me3 play opposing roles in the regulation of Pol II pausing. We found that H4K16Ac promoted the release of Pol II from pausing through the recruitment of BRD4 and pTEFb. Aberrant methylation of CpG island DNA blocked Pol II recruitment to gene promoters. Whereas the inhibition of DNA methylation allowed for the reassociation and initiation of Pol II at the TMS1 promoter, Pol II remained paused in the presence of H4K20me3. Combined inhibition of H4K20me3 and DNA methylation resulted in the rerecruitment of hMOF and subsequent H4K16Ac, release of Pol II into active elongation, and synergistic reactivation of TMS1 expression. Marking by H4K20me3 was not restricted to TMS1 but also occurred at other genes independently of DNA methylation, where it similarly imposed a block to Pol II promoter escape through a mechanism that involved the local inhibition of H4K16Ac. These data indicate that H4K20me3 invokes gene repression by antagonizing hMOF-mediated H4K16Ac and suggest that overcoming Pol II pausing might be a rate-limiting step in achieving tumor suppressor gene reactivation in cancer therapy.
机译:尽管缺乏明显的全长转录本,但许多人类基因在其启动子上均显示出起始的RNA聚合酶II(Pol II)的证据。这样的基因表现出启动子近端的“暂停”,其中由于介导向伸长的过渡的限速步骤,起始的Pol II堆积在转录起始位点的下游。仍未完全了解调节Pol II暂停逃逸的机制以及与染色质结构的关系。最近,我们显示人类乳腺癌中CpG岛超甲基化和TMS1 / ASC的表观遗传学沉默伴随着从组蛋白H4赖氨酸16乙酰化(H4K16Ac)到H4赖氨酸20三甲基化(H4K20me3)的局部转移。在这里,我们显示hMOF介导的H4K16Ac和SUV420H2介导的H4K20me3在调控Pol II暂停中起相反的作用。我们发现H4K16Ac通过募集BRD4和pTEFb促进了Pol II的释放。 CpG岛DNA的异常甲基化阻止了Pol II募集到基因启动子。尽管对DNA甲基化的抑制使TMS1启动子上的Pol II重新结合和启动,但在H4K20me3存在的情况下Pol II仍处于暂停状态。 H4K20me3和DNA甲基化的联合抑制导致hMOF的重新招募和随后的H4K16Ac的释放,Pol II释放到活性延伸中以及TMS1表达的协同激活。 H4K20me3的标记不仅限于TMS1,而且也发生在其他基因上,与DNA甲基化无关,它通过涉及H4K16Ac的局部抑制的机制类似地对Pol II启动子逃逸施加了阻滞。这些数据表明,H4K20me3通过拮抗hMOF介导的H4K16Ac来激活基因抑制作用,并表明克服Pol II暂停可能是在癌症治疗中实现肿瘤抑制基因重新激活的限速步骤。

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